• 제목/요약/키워드: Bone marrow stromal cell transplantation

검색결과 11건 처리시간 0.034초

자가 골수 기질 세포 이식을 이용한 장관골 양성 골 병변의 치료 (Treatment of Benign Bone Lesions with Autologous Bone Marrow Stromal Cell Transplantation)

  • 이승구;강용구;김용식;박원종;정양국;김형준;옥지훈
    • 대한골관절종양학회지
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    • 제10권1호
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    • pp.13-21
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    • 2004
  • 목적: 골수에서 분리한 기질 세포를 단독으로 또는 동종 망상골과 함께 이식하여 치료했던 양성 골 병변 소파 후 발생한 골 결손에 대한 치료 결과를 보고 하고자 한다. 대상 및 방법: 1996년 7월 이래 장관골 양성 골 병변에 대해 병변이 작거나 소아여서 소파술과 함께 자가 골수 기질 세포를 단독으로 이식하였던 2명 3례와, 자가 골수 기질 세포와 동종 망상골 이식을 병행하여 치료하였던 6명 6례 등 총 8명 9례를 대상으로 수술 후 임상증상의 해소, 신생 골 형성 및 주변 정상골과의 유합 과정을 추시하였다. 남자가 6례, 여자가 2례였으며 평균 연령은 24세(8세~47세)였다. 조직학적 진단은 섬유성 골 이형성증이 5례로 많았고, 단순 골 낭종 2례, 연골모세포종과 섬유성 피질 결손이 각각 1례씩 이었다. 수술 후 평균 추시기간은 16.3개월(3개월~84개월) 이었다. 결과: 수술 전 병소 부위에 통증을 호소했던 4례 모두에서 술 후 2주 이내에 증상이 소실되었으며, 수술 후 촬영한 단순 방사선 사진 상 약 4주경부터 병변 부위에 신생 골 형성이 관찰되고 약 8주경에는 골 결손 부위가 신생 골로 충전되고 주변 정상골과 유합된 소견을 보였다. 합병증으로는 1례에서 술 후 3주에 병소 부위를 통과하는 골절이 발생했으며, 단순 골 낭종 1례에서 술 후 5개월에 병소가 재발하였다. 결론: 장관골 양성 골 병변에 대해 소파 후 골수에서 분리한 골수 기질 세포를 단독으로 또는 동종 망상골과 함께 이식할 때 빠른 치유과정을 보여, 비록 단 기간의 추시 결과이기는 하나 골수 기질 세포 이식술이 향후 골 낭종이나 양성 골 병변의 치료에 크게 이용될 수 있을 것으로 보인다. 골 낭종 수술 후 재발 원인은 낭종내벽 섬유조직의 불완전 소파의 결과로 보이며, 골절 발생 가능성이 높은 대퇴골 전자간 골 낭종 등에 대하여는 금속판 등을 이용한 예방적인 고정이 필요할 것으로 판단되었다.

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인간 골수기질세포 또는 진피섬유모세포의 이종이식이 흰쥐의 창상치유속도에 미치는 영향 (Effect of Transplantation of Human Bone Marrow Stromal Cells or Dermal Fibroblasts on Wound Healing)

  • 한승규;최원일;이병일;김우경
    • Archives of Plastic Surgery
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    • 제34권4호
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    • pp.426-431
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    • 2007
  • Purpose: The aim of this study is to compare the effects of bone marrow stromal cells(BSCs) and fibroblasts on wound healing activity in vivo, especially on epithelization. Methods: The fibroblasts and BSCs were harvested from patients and cultured. Ten Spague-Dawley white rats were used. A 5 mm punches were made to excise skin and subcutaneous tissue in a round fashion at six sites on the back area of each rat. Four hundred thousand cells suspended in 0.05 ml fibrinogen were applied to the created wounds. The cells in group I, II, and III were no cells, fibroblasts and BSCs. The lengths of epithelial gap at the widest wound site were compared with autopsy specimens obtained on the 6th day after cell therapy under light microscope. Statistical comparisons were performed using the Mann-Whitney U-test, and the p value < 0.05 was considered statistically significant. Results: The best epithelization was also seen in the BSC group, followed by fibroblast and no cell groups.Conclusion: These results demonstrate that BSC has superior effect on stimulating wound healing than fibroblast, which is currently used for wound healing.

The Neovascularization Effect of Bone Marrow Stromal Cells in Temporal Muscle after Encephalomyosynangiosis in Chronic Cerebral Ischemic Rats

  • Kim, Hyung-Syup;Lee, Hyung-Jin;Yeu, In-Seung;Yi, Jin-Seok;Yang, Ji-Ho;Lee, Il-Woo
    • Journal of Korean Neurosurgical Society
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    • 제44권4호
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    • pp.249-255
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    • 2008
  • Objective : In Moyamoya disease, the primary goal of treatment is to improve collateral circulation through angiogenesis. In the present study, we obtained and sub-cultured bone marrow stromal cells (BMSCs) from rats without a cell-mediated immune response. Then, we injected the labeled BMSCs directly into adjacent temporal muscle during encephalomyosynangiosis (EMS). Three weeks after BMSC transplantation, we examined the survival of the cells and the extent of neovascularization. Methods : We divided 20 rats into a BMSC transplantation group (n=12) and a control group (n=8). Seven days after the induction of chronic cerebral ischemia, an EMS operation was performed, and labeled BMSCs ($1{\times}106^6/100\;{\mu}L$) were injected in the temporal muscle for the transplantation group, while an equivalent amount of culture solution was injected for the control group. Three weeks after the transplantation, temporal muscle and brain tissue were collected for histological examination and western blot analysis. Results : The capillary/muscle ratio in the temporal muscle was increased in the BMSC transplantation group compared to the control group, showing a greater increase of angiogenesis (p<0.05). In the brain tissue, angiogenesis was not significantly different between the two groups. The injected BMSCs in the temporal muscle were vascular endothelial growth factor (VEGF)-positive by immunofluorescence staining. In both temporal muscle and brain tissue, the expression of VEGF by western blot analysis was not much different between the two groups. Conclusion : During EMS in a chronic cerebral ischemia rat model, the injection of BMSCs resulted in accelerated angiogenesis in the temporal muscle compared to the control group.

골수기질세포와 진피섬유모세포의 이식이 교원질 합성에 미치는 영향 (Effect of Transplantation of Bone Marrow Stromal Cells and Dermal Fibroblasts on Collagen Synthesis)

  • 최원일;한승규;이병일;김우경
    • Archives of Plastic Surgery
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    • 제34권2호
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    • pp.156-162
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    • 2007
  • Purpose: In the previous in vitro studies the bone marrow stromal cells(BSCs) have shown the superior effect for wound healing activity than fibroblasts, which includes cell proliferation, type I collagen synthesis, and the production of bFGF, VEGF and TGF-${\beta}$ in chronic wound healing. The aim of this study is to compare the effects of BSCs and fibroblasts on wound healing activity in vivo, especially on collagen synthesis. Methods: The fibroblasts and BSCs were harvested from patients and cultured. The cultured cells were infiltrated into the pores of polyethylene discs. These discs were divided into three groups according to the mixed cells. In groups I, II and III the discs were loaded with no cells, fibroblasts and BSCs, respectively. Twelve discs per group(total 36 discs) were made for this study. After creating 6 pockets in the back of each rats, each discs was implanted into each pockets. At three time intervals from 1 to 3 weeks, the implanted discs were harvested for the histological and quantitative analysis. The amount of collagen produced was evaluated using ELISA. Statistical comparisons were made using the Mann-Whitney U-test. Results: There was great difference in the collagen synthesis among the three groups by the 1st and 2nd weeks. The BSC group showed highest collagen level, followed by fibroblast group and no cell group(p<0.05). The 3rd week specimens also showed greater collagen amount in BSC and fibroblast groups compared to those of no cell group(p<0.05). However, there was little difference between BSC and fibroblast groups. Conclusion: This result demonstrates that BSC has superior effect on stimulating wound healing than fibroblast, which is currently used for wound healing.

섬유성이형성증 유래세포의 특성연구 (CHARACTERISTICS OF FIBROUS DYSPLASIA DERIVED CELLS)

  • 이찬희;한인;서병무
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제35권5호
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    • pp.304-309
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    • 2009
  • Purpose: Fibrous dysplasia (FD) is a fibro-osseous disease associated with activating missense mutations of the gene encoding the $\alpha$-subunit of stimulatory G protein. FD may affect a single bone (called monostotic form) or multiple bones (called polyostotic form). The extent of lesions reflects the onset time of mutation. In this study, cells from monostotic FD in maxilla of a patient were isolated and cultured in vitro for characterization. Materials and Methods: The single cells were released from FD lesion which was surgical specimen from 15 years-old boy. These isolated cells were cultured in vitro and tested their proliferation activity with MTT assay. In osteogenic media, these cells underwent differentiation process comparing with its normal counterpart i.e. bone marrow stromal cells. The proliferated FD cells were detached and transplanted into the dordsal pocket of nude mouse and harvested in 6 weeks and 12 weeks. Results and Summary: FD cells have an increased proliferation rate and poor differentiation. As a result, cells isolated from FD lesion decreased differentiation into osteoblast and increased proliferation capacity. MTT assay presented that proliferation rate of FD cells were higher than control. However, the mineral induction capacity of FD was lesser than that of control. Monostotic FD cells make fewer amounts of bone ossicles and most of them are woven bone rather than lamellar bone in vivo transplantation. In transplanted FD cells, hematopoietic marrow were not seen in the marrow space and filled with the organized fibrous tissue. Therefore, they were recapitulated to the original histological features of FD lesion. Collectively, these results indicated that the FD cells were shown that the increased proliferation and decreased differentiation potential. These in vitro and in vivo system can be useful to test FD cell's fate and possible.

창상치유목적의 골수기질세포 동종이식을 위한 고분자막의 조건 (Optimal Condition of Microporous Membrane for Bone Marrow Stromal Cell Allotransplantation to Stimulate Wound Healing in Vitro)

  • 이은상;김명주;한승규;홍성택;김우경
    • Archives of Plastic Surgery
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    • 제37권5호
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    • pp.509-518
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    • 2010
  • Purpose: Major drawbacks of conventional bone marrow stromal cells (BSCs) transplantation method are mainly caused by direct transplanted cell to host cell interactions. We hypothesized that separation of the transplanted cells by a microporous membrane might inhibit most of the potential adverse effects and induce superior effect. The purpose of the study is to determine the optimal condition of the microporous membrane. Methods: First, BSCs were placed in polyethylene terephthalate (PET) transwell inserts with 3, 8, or $12{\mu}m$ pore size, and cultured in 24 well culture plates. After 5 days, bottoms of the plates were observed for presence of attached BSCs in monolayer and cell numbers were evaluated. Second, BSCs were placed PET, polycarbonate (PCT), and mixed cellulose esters (MCE) transwell inserts with 3 and $8{\mu}m$ pore size, and cultured in 24 well culture plates. After 3 days, the supernatants of the media left in culture plate were analyzed for collagen, vascular endothelial growth factor (VEGF), platelet derived growth factor BB (PDGF-BB), and basic fibroblast growth factor (bFGF). Third, BSCs were placed in 15% and 70% of the PET membrane with $3{\mu}m$ pore size. All the experimental conditions and methods were same as the second study. Results: The optimal pore sizes to prevent BSC leakage were $3{\mu}m$ and $8{\mu}m$. The amounts of type I collagen and three growth factors tested did not show significant differences among PET, PCT, and MCE groups. However, the collagen, VEGF, and bFGF levels were much higher in the high (70%) density group than in the low (15%) density group. Conclusion: This study revealed that the optimal pore size of membrane to prevent direct BSC to recipient cell contact is in between $3{\mu}m$ and $8{\mu}m$. Membrane materials and pore sizes do not influence the collagen and growth factor passage through the membrane. The most striking factor for collagen and growth factor transport is pore density of the membrane.

${\alpha}$-1,3-Galactosyltransferase Knock Out(GalT KO) 돼지유래 골수 중간엽 줄기세포의 특성 규명 (Establishment and Characterization of Bone Marrow Mesenchymal Stromal/Stem Cells (MSCs) Derived from ${\alpha}$-1,3-Galactosyltransferase Knock Out(GalT KO) Pig)

  • 옥선아;오건봉;황성수;임석기;김영임;박진기
    • 한국수정란이식학회지
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    • 제28권3호
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    • pp.281-287
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    • 2013
  • A major barrier to progress in pig to primate organ transplantation or cell therapy is the presence of terminal ${\alpha}$-1,3-galactosyl epitopes on the surface of pig cells. Therefore, the purpose of this experiment was to establish and cha- racterize mesenchymal stromal/stem cells (MSCs) derived from ${\alpha}$-1,3-galactosyltransferase (GalT) knock out (GalT KO) pig to confirm their potential for cell therapy. Bone marrow (BM)-MSCs from GalT KO pig of 1 month old were isolated by Ficoll-Paque PLUS gradient and cultured with A-DMEM + 10% FBS on plastic dishes in 5% $CO_2$ incubator at 38.5. GalT KO BM-MSCs were analyzed for the expression of CD markers ($CD45^-$, $29^+$, $90^+$ and $105^+$) and in vitro differentiation ability (adiopogenesis and osteogenesis). Further, cell proliferation capacity and cell aging of GalT KO BM-MSCs were compared to Wild BM-MSCs by BrdU incorporation assay (Roche, Germany) using ELISA at intervals of two days for 7 days. Finally, the cell size was also evaluated in GalT KO and Wild BM-MSCs. Statistical analysis was performed by T-test (P<0.05). GalT KO BM-MSCs showed fibroblast-like cell morphology on plastic culture dish at passage 1 and exhibited $CD45^-$, $29^+$, $90^+$ and $105^+$ expression profile. Follow in ginduction in StemPro adipogenesis and osteogenesis media for 3 weeks, GalT KO BM-MSCs were differentiated into adipocytes, as demonstrated by Oilred Ostaining of lipid vacuoles and osteocytes, as confirmed by Alizarinred Sstaining of mineral dispositions, respectively. BrdU incorporation assay showed a significant decrease in cell proliferation capacity of GalT KO BM-MSCs compared to Wild BM-MSCs from 3 day, when they were seeded at $1{\times}10^3$ cells/well in 96-well plate. Passage 3 GalT KO and Wild BM-MSCs at 80% confluence in culture dish were allowed to form single cells to calculate cell size. The results showed that GalT KO BM-MSCs($15.0{\pm}0.4{\mu}m$) had a little larger cell size than Wild BM-MSCs ($13.5{\pm}0.3{\mu}m$). From the above findings, it is summarized that GalT KO BM-MSCs possessed similar biological properties with Wild BM-MSCs, but exhibited a weak cell proliferation ability and resistance to cell aging. Therefore, GalT KO BM-MSCs might form a good source for cell therapy after due consideration to low proliferation potency in vitro.

hPDX1 유전자의 삽입에 의한 직접 췌도세포 분화 (Transdifferentiation of α-1,3-Galactosyltransferase Knock Out (GalT KO) Pig Derived Bone Marrow Mesenchymal Stromal Cells (BM-MSCs) into Pancreatic Cells by Transfection of hPDX1)

  • 옥선아;오건봉;황성수;김영임;권대진;임기순
    • 한국수정란이식학회지
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    • 제30권3호
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    • pp.249-255
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    • 2015
  • Diabetes mellitus, the most common metabolic disorder, is divided into two types: type 1 and type 2. The essential treatment of type 1 diabetes, caused by immune-mediated destruction of ${\beta}-cells$, is transplantation of the pancreas; however, this treatment is limited by issues such as the lack of donors for islet transplantation and immune rejection. As an alternative approach, stem cell therapy has been used as a new tool. The present study revealed that bone marrowderived mesenchymal stromal cells (BM-MSCs) could be transdifferentiated into pancreatic cells by the insertion of a key gene for embryonic development of the pancreas, the pancreatic and duodenal homeobox factor 1 (PDX1). To avoid immune rejection associated with xenotransplantation and to develop a new cell-based treatment, BM-MSCs from ${\alpha}$-1,3-galactosyltransferase knockout (GalT KO) pigs were used as the source of the cells. Transfection of the EGFP-hPDX1 gene into GalT KO pig-derived BM-MSCs was performed by electroporation. Cells were evaluated for hPDX1 expression by immunofluorescence and RT-PCR. Transdifferentiation into pancreatic cells was confirmed by morphological transformation, immunofluorescence, and endogenous pPDX1 gene expression. At 3~4 weeks after transduction, cell morphology changed from spindle-like shape to round shape, similar to that observed in cuboidal epithelium expressing EGFP. Results of RT-PCR confirmed the expression of both exogenous hPDX1 and endogenous pPDX1. Therefore, GalT KO pig-derived BM-MSCs transdifferentiated into pancreatic cells by transfection of hPDX1. The present results are indicative of the therapeutic potential of PDX1-expressing GalT KO pig-derived BM-MSCs in ${\beta}-cell$ replacement. This potential needs to be explored further by using in vivo studies to confirm these findings.

제대혈 CD34+ 세포에서 유래된 지지세포의 분석 (Analysis of Stromal Cells Developed from Cord Blood CD34+ Cells)

  • 유경하;박세진;김경효;서주영;;신희영;안효섭
    • IMMUNE NETWORK
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    • 제1권1호
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    • pp.87-94
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    • 2001
  • 목적 : 제대혈의 조혈모세포 체외확장 시 조혈세포 증폭과 더불어 조혈미세환경의 변화가 일어난다. 이때 제대혈 $CD34^+$ 세포에서 유래되는 지지세포의 계열 분석조혈성장인자 분비능력을 알아보고 지지세포 증식 조건을 확립하여 효과적인 제대혈의 체외증폭을 제시하고자 하였다. 방법 : 제대혈부터 $CD34^+$ 세포를 분리하여 실험에 사용하였다. 무혈청배지에서 각종 조혈성장인자를 다양한 조합으로 첨가하여 배양하였고 증식정도는 현미경으로 관찰하여 배양용기를 점유한 면적 비율로 계산하였다. 세포외간질 단백의 효과를 분석하기 위하여 collagen S, fibronectin, laminin 및 poly-L-ly sine를 미리 coating한 용기에 배양하여 분석하였다. 제대혈 $CD34^+$ 세포를 조혈성장인자의 첨가 없이 3주간 액체배양하였다. 배양 시, 1주, 2주 및 3주에 상층액을 얻어 $-80^{\circ}C$에 보관하였다가 한꺼번에 IL-3, IL-6, GM-CSF, IL-$1{\beta}$ 및 TNF-$\alpha$등을 ELISA 방법으로 내부적으로 분비되는 량을 측정하였다. 분화된 지지세포의 계열을 분석하기 위해 E-selectin, VCAM-1, ICAM-1, PECAM-1, vWF, vimentin 및 CD 14 항체를 이용하여 면역화학염색 후 형광현미경으로 관찰하였다. 결과 : 제대혈 $CD34^+$ 세포 체외증폭시키는 과정에서 배양 4일에 지지세포가 출현하기 시작하여 7-10일이 지나면서 증식하기 시작하였고 14-2 1일 경에 서로 뭉치는 양상을 보여주었다. 제대혈 $CD34^+$ 세포 배양하면서 내부적으로 분비되는 GM-CSF, IL-6의 측정치는 시간이 지남에 따라 증가되었다. 제대혈 $CD34^+$ 세포 체외확장 시 지지세포의 증식 정도는 TPO+FL+SCF+LIF의 조합의 조혈성장인자가 첨가되었을 때 그리고 세포외간질 단백 성분 중 1% poly-L-lysine으로 처리한 경우 가장 효과적이었다. 결론 : 체외 증폭시 제대혈 $CD34^+$ 세포로부터 지지세포가 나타났으며 적절한 조혈성장인자의 첨가나 세포외간질 단백의 첨가에 의해 증폭될 수 있다.

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Therapeutic Benefits of Mesenchymal Stromal Cells in a Rat Model of Hemoglobin-Induced Hypertensive Intracerebral Hemorrhage

  • Ding, Rui;Lin, Chunnan;Wei, ShanShan;Zhang, Naichong;Tang, Liangang;Lin, Yumao;Chen, Zhijun;Xie, Teng;Chen, XiaoWei;Feng, Yu;Wu, LiHua
    • Molecules and Cells
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    • 제40권2호
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    • pp.133-142
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    • 2017
  • Previous studies have shown that bone marrow mesenchymal stromal cell (MSC) transplantation significantly improves the recovery of neurological function in a rat model of intracerebral hemorrhage. Potential repair mechanisms involve anti-inflammation, anti-apoptosis and angiogenesis. However, few studies have focused on the effects of MSCs on inducible nitric oxide synthase (iNOS) expression and subsequent peroxynitrite formation after hypertensive intracerebral hemorrhage (HICH). In this study, MSCs were transplanted intracerebrally into rats 6 hours after HICH. The modified neurological severity score and the modified limb placing test were used to measure behavioral outcomes. Blood-brain barrier disruption and neuronal loss were measured by zonula occludens-1 (ZO-1) and neuronal nucleus (NeuN) expression, respectively. Concomitant edema formation was evaluated by H&E staining and brain water content. The effect of MSCs treatment on neuroinflammation was analyzed by immunohistochemical analysis or polymerase chain reaction of CD68, Iba1, iNOS expression and subsequent peroxynitrite formation, and by an enzyme-linked immunosorbent assay of pro-inflammatory factors (IL-$1{\beta}$ and TNF-${\alpha}$). The MSCs-treated HICH group showed better performance on behavioral scores and lower brain water content compared to controls. Moreover, the MSC injection increased NeuN and ZO-1 expression measured by immunochemistry/immunofluorescence. Furthermore, MSCs reduced not only levels of CD68, Iba1 and pro-inflammatory factors, but it also inhibited iNOS expression and peroxynitrite formation in perihematomal regions. The results suggest that intracerebral administration of MSCs accelerates neurological function recovery in HICH rats. This may result from the ability of MSCs to suppress inflammation, at least in part, by inhibiting iNOS expression and subsequent peroxynitrite formation.